Jiang Huaning, Wang Huaizhang, Shangguan Yanlei, Chen Jingfei, Liang Ting
The Institute of NBC Defense, Beijing, China.
Front Chem. 2022 Sep 12;10:1011471. doi: 10.3389/fchem.2022.1011471. eCollection 2022.
Rapid detection of Chemical Warfare Agents (CWAs) is of great significance in protecting civilians in public places and military personnel on the battlefield. Two-dimensional (2D) molybdenum disulfide (MoS) nanosheets (NSs) can be integrated as a gas sensor at room temperature (25°C) due to their large specific surface area and excellent semiconductor properties. However, low sensitivity and long response-recovery time hinder the pure MoS application in CWAs gas sensors. In this work, we developed a CWAs sensor based on niobium-doped MoS NSs (Nb-MoS NSs) via direct chemical-vapor-deposition (CVD) growth. Characterization results show that the high content of Nb elements (7.8 at%) are homogeneously dispersed on the large-area 2D structure of MoS. The Nb-MoS NSs-based CWAs sensor exhibits higher sensitivity (-2.09% and -3.95% to 0.05 mg/m sarin and sulfur mustard, respectively) and faster response speed (78 s and 30 s to 0.05 mg/m sarin and sulfur mustard, respectively) than MoS and other 2D materials at room temperature. And the sensor has certain specificity for sarin and sulfur mustard and is especially sensitive to sulfur mustard. This can be attributed to the improvement of adsorption properties via electronic regulation of Nb doping. This is the first report about CWAs detection based on two-dimensional (2D) transition metal dichalcogenides (TMDs) sensing materials, which demonstrates that the high sensitivity, rapid response, and low limit of detection of 2D TMDs-based CWAs sensor can meet the monitoring needs of many scenarios, thus showing a strong application potential.
快速检测化学战剂(CWAs)对于保护公共场所的平民和战场上的军事人员具有重要意义。二维(2D)二硫化钼(MoS)纳米片(NSs)由于其大的比表面积和优异的半导体特性,可在室温(25°C)下集成用作气体传感器。然而,低灵敏度和长响应恢复时间阻碍了纯MoS在化学战剂气体传感器中的应用。在这项工作中,我们通过直接化学气相沉积(CVD)生长法开发了一种基于铌掺杂MoS纳米片(Nb-MoS NSs)的化学战剂传感器。表征结果表明,高含量的铌元素(7.8原子%)均匀地分散在大面积的二维MoS结构上。基于Nb-MoS NSs的化学战剂传感器在室温下比MoS和其他二维材料表现出更高的灵敏度(对0.05 mg/m³沙林和芥子气分别为-2.09%和-3.95%)和更快的响应速度(对0.05 mg/m³沙林和芥子气分别为78秒和30秒)。并且该传感器对沙林和芥子气具有一定的特异性,对芥子气尤其敏感。这可归因于通过铌掺杂的电子调控对吸附性能的改善。这是关于基于二维(2D)过渡金属二硫属化物(TMDs)传感材料检测化学战剂的首次报道,表明基于二维TMDs的化学战剂传感器的高灵敏度、快速响应和低检测限能够满足多种场景的监测需求,从而显示出强大的应用潜力。